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MA Jian-yang CHEN Sun-lu ZHANG Jian-hui DONG Yan-jun TENG Sheng Laboratory of Plant Genetics Functional Gene 《水稻科学》2012,19(1):1-7
A lesion mimic stripe mutant,designated as lms1(lesion mimic stripe 1),was obtained from the M2 progeny of a 60Co γ-radiation treated japonica rice variety Jiahua 1.The lms1 mutant displayed propagation type lesions across the whole growth and developmental stages.Physiology and histochemistry analysis showed that the mutant exhibited a phenotype of white stripe when grown under high temperature(30 ℃),and the lesion mimic caused by programmed cell death under low temperature(20 ℃).The genetic analysis indicated that this lesion-mimic phenotype is controlled by a single locus recessive nuclear gene.Furthermore,by using simple sequence repeat markers and an F2 segregating population derived from two crosses of lms1 × 93-11 and lms1 × Pei'ai 64S,the lms1 gene was mapped between markers Indel1 and MM0112-4 with a physical distance of 400 kb on chromosome 6 in rice. 相似文献
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在粳稻品种武育粳3号栽培群体中获得一个类病斑突变体wy3。该突变体类病斑出现于苗期,分蘖期扩散至整张叶片,属于扩散型类病斑突变体。相比野生型,突变体wy3的株高明显降低,有效分蘖数减少,穗长、每穗粒数、结实率均显著降低。遮光处理表明,突变体wy3类病斑的产生受自然光诱导。台盼蓝染色结果表明,类病斑部位有大量的死亡细胞。突变体wy3的光合色素含量和净光合速率较野生型显著降低,SOD、POD、CAT活性和MDA含量均显著高于野生型。遗传分析表明突变体表型受单隐性核基因控制,采用BSA将该基因初步定位在第2染色体短臂端粒附近。采用F2群体中1099株类病斑单株将基因定位在标记W2-17和W2-18之间28kb的物理距离内。测序结果表明,突变体wy3中的LOC_Os02g02000编码区(CDS)第375位碱基C缺失,导致翻译提前终止,突变体中该候选基因为OsHPL3的一个新等位基因。 相似文献
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粳稻品种嘉花1号经60Co γ射线辐射诱变后获得一个水稻类病斑突变体MR07, 暂命名为lms1。该突变体的病斑在全生育期均表现,属于扩散型类病斑突变体。生理和组织化学分析表明,该突变体在高温条件下(30℃)培养时只表现为白色条斑,低温条件下(20℃)培养时表现出细胞自主性死亡的坏死病斑。遗传分析表明,该突变体受1对隐性核基因控制。以lms1突变体与籼稻9311、培矮64S杂交的两个F2分离群体作为定位群体,利用SSR标记和Indel标记将该基因定位在第6染色体上,位于标记InDel1和MM0112-4之间,其物理距离为400 kb。 相似文献
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【目的】绝大多数水稻类病斑突变体中免疫系统被激活可以有效提升其对稻瘟病的抗性,为进一步解析类病斑突变体抗病的分子机制,对类病斑突变体lmm326进行了研究。【方法】lmm326是粳稻中花11通过EMS辐射诱变,经多代自交和回交获得的一个类病斑突变体,并将突变体分别与中花11和Dular杂交获得的F_2群体用于遗传分析,采用图位克隆的方法对目的基因进行精细定位。【结果】5叶期时,该突变体下部叶片表面开始出现类病斑表型;与野生型相比,突变体叶片光合色素含量、净光合速率、株高、结实率、单株有效分蘖数、千粒重等显著下降;突变体带病斑叶片中死亡细胞数量及过氧化氢的积累量明显多于野生型;突变体相较于野生型对4个已鉴定的稻瘟病生理小种的抗性明显提高。遗传分析表明该性状由一对单隐性核基因控制。采用图位克隆方法将该基因定位在第1染色体长臂端38kb的区间内,其中包含6个开放阅读框。测序发现基因Os01g0919900第2外显子上对应CDS的第433位碱基由C突变成T,最终导致其编码蛋白的第145个氨基酸由苯丙氨酸(F)变为亮氨酸(L)。qRT-PCR结果显示,与野生型相比,lmm326中参与水杨酸信号通路的防卫基因显著上调表达。【结论】LMM326与OsSSI2互为等位基因,该基因可能参与负调控水杨酸信号转导途径,其突变激活了水稻体内的防卫反应。 相似文献
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对水稻类病变坏死突变体 lmm1 (LmmKaty)与原亲本及双单倍体YT14和YT16接种稻瘟病菌24 h内的抗病反应、细胞学和分子作用机理进行了研究。人工接种实验表明,与原亲本相比,该突变体对稻瘟病菌具有更强的抗性。突变体接种20~24 h后,自动荧光检测到细胞死亡,而对照则未检测到。表明该突变体通过细胞程序性死亡阻止稻瘟病菌的蔓延,从而提高了抗病性。Northern blotting结果发现,抗病品系YT14中的防卫相关基因、苯丙氨酸解氨酶基因和β 葡聚糖酶基因在人工接种稻瘟病菌6 h后开始表达,16~24 h后上述基因表达量快速增加;而病程相关蛋白基因 PR 1和几丁质酶基因在人工接种稻瘟病菌24 h后才开始表达。与YT14相比,感病品系中上述基因的表达明显延迟。表明在人工接种稻瘟病菌24 h内水稻可启动抗病防卫反应,从而对稻瘟病菌产生抗性。 相似文献
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发掘玉米抗病种质资源,克隆抗病基因并解析玉米抗病机制,是玉米抗病性品种改良的基础。类病斑突变体(Lesion mimic mutant,Lmm)是一类在没有病原菌侵染或其他外界刺激情况下,表现出类似病害所致自发性坏死斑的突变体,是研究植物抗病机制的重要材料。对类病斑突变体Lmm18进行表型鉴定和基因初定位。该突变体首先在叶尖部表现类病斑坏死表型,坏死斑随着生长沿叶脉逐渐扩展增多,最后遍及整个叶片。通过二氨基联苯胺(3,3’-diaminobenzidine,DAB)染色,发现Lmm18中过氧化氢含量相较于野生型明显增多。此外,抗病标志基因PATHOGENESIS-RELATED 1(PR1)和PR5在Lmm18中显著上调,表明该突变体启动了抗病防御反应。遗传分析表明,该性状由显性单基因控制。利用B73与Lmm18杂交构建的F2群体进行BSR-Seq (Bulked Segregant RNA-Se-quencing)分析及连锁标记定位,将Lmm18基因初步定位到2号染色体1.23 Mb的区间内,该研究为后续克隆该基因并解析其介导的抗病防御调控机制奠定了基础。 相似文献
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【目的】对水稻类病斑突变体的研究有助于解析其与植物生长和防御反应的关系。【方法】本研究在粳稻品系FI135胚培养过程中获得了1个类病斑突变体lmm7(lesion mimic mutant 7)。通过对其进行系统的表型鉴定、农艺性状考查、超微结构观察、生理学特性分析,阐明LMM7基因对植物生长的调控。通过病原菌抗性鉴定,明确lmm7对植物防御反应的影响。利用9311B与突变体lmm7杂交所得F2群体对该突变体进行了遗传分析和基因精细定位。【结果】该突变体苗期表型正常,分蘖初期,植株基部叶片从叶尖开始不断出现褐色斑点,并向整株扩散,且斑点数目随植株生长不断增加。与野生型相比,突变体的株高、穗长、有效穗数、每穗粒数、结实率及剑叶长宽都显著降低,但籽粒性状和抽穗期没有显著性差异。遮光处理表明,突变体lmm7的表型受到光照诱导,抽穗期突变体lmm7叶肉细胞严重失绿,光合色素含量显著降低。组织化学分析表明,突变体病斑处的H2O2含量显著升高。透射电镜观察结果表明,突变体lmm7叶肉细胞的叶绿体数目减少,叶绿体类囊体片层结构严重受损,细胞器肿胀解体,并出现大量嗜锇小体,同时病斑内部和周围区域积累了... 相似文献
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水稻多分蘖矮秆突变体d63的遗传分析与基因定位 总被引:1,自引:0,他引:1
多分蘖矮秆突变体d63来源于SARⅢ二倍体与明恢63杂交得到的双胚苗株系的自然突变。与野生型相比,其株高显著下降,分蘖明显增多,剑叶变细变短,结实率和千粒重均大幅下降。遗传分析表明,该突变性状受一对隐性单基因控制。该基因位于水稻第8染色体短臂上距离RM22195约0.4 cM的位置。用水稻基因组注释软件Rice Genome Annotation预测,发现从端粒区至RM22195间共有14 个注释基因,未发现已经报道的与株高、分蘖相关的同源基因。因此,推测D63可能是一个未被报道的新基因。 相似文献
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LI Jin-bo XIA Ming-yuan WAN Bing-liang DU Xue-shu ZHA Zhong-ping YU Da-zhao QI Hua-xiong 《水稻科学》2009,16(1):79-82
A mutant with twisted hulls was found in a breeding population of rice (Oryza sativa L.). The mutant shows less grain weight and inferior grain quality in addition to twisted hulls. Genetic analysis indicated that the phenotype of mutant was controlled by a single recessive gene (temporarily designated as TWH). To map the TWH gene, an F2 population was generated by crossing the twh mutant to R725, an indica rice variety with normal hulls. For bulked segregant analysis, the bulk of mutant plants was prepared by mixing equal amount of plant tissue from 10 twisted-hull plants and the bulk of normal plants was obtained by pooling equal amount tissue of 10 normal-hull plants. Two hundred and seven pairs of simple sequence repeat (SSR) primers, which are distributed on 12 rice chromosomes, were used for polymorphism analysis of the parents and the two bulks. The TWH locus was initially mapped close to the SSR marker RM526 on chromosome 2. Therefore, further mapping was performed using 50 pairs of SSR primers around the marker RM526. The TWH was delimited between the SSR markers RM14128 and RM208 on the long arm of chromosome 2 at the genetic distances of 1.4 cM and 2.7 cM, respectively. These results provide the foundation for further fine mapping, cloning and functional analysis of the TWH gene. 相似文献
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FANG Li-kui SANG Xian-chun YANG Zheng-lin LIN Ying-hua WAN Nan HE Guang-hua 《水稻科学》2009,16(4):323-326
Tiller angle, a very essential agronomic trait, is significant in rice breeding, especially in plant type breeding. A tiller angle controlling 2 (tac2) mutant was obtained from a restorer line Jinhui 10 by ethyl methane sulphonate mutagenesis. The tac2 mutant displayed normal phenotype at the seedling stage and the tiller angle significantly increased at the tillering stage. A preliminary physiological research indicated that the mutant was sensitive to GA. Thus, it is speculated that TAC2 and TAC1 might control the tiller angle in the same way. Genetic analysis showed that the mutant trait was controlled by a major recessive gene and was located on chromosome 9 using SSR markers. The genetic distances between TAC2 and its nearest markers RM3320 and RM201 were 19.2 cM and 16.7 cM, respectively. 相似文献
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从常规粳稻常优94后代中筛选到一份自然突变的抽穗期延迟的类树稻突变体lhd3(leafy head 3)。在短日照条件下,与野生型比较,lhd3突变体在生长后期,上部节间会继续长出叶片(一般为3片)和高位分蘖,类似于树的侧枝生长,抽穗期延迟,但基部分蘖数不受影响。经典遗传分析表明,lhd3与籼稻南京6号的F2群体中,正常植株与类树稻植株的分离比符合3∶1,说明此性状受单隐性基因控制。利用该群体进行图位克隆,将LHD3基因定位在水稻第1染色体短臂的两个新发展的STS标记wpla3和wpla25之间。再利用5个新发展的STS和CAPS标记,最终将该基因精细定位在WX6和CAPS1两个标记之间,物理距离约为60 kb。通过水稻基因组注释系统共预测到10个开放阅读框(ORF)。对该基因的进一步克隆将有助于阐明水稻生育期和叶原基发育调控机理。 相似文献
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类病变突变体是植物在无显著逆境或损伤情况下以及未受到病原物危害时叶片上自然形成的类似病斑的一类突变体。水稻类病变突变体的产生常伴有抗病性的增强,其中涉及到防御相关基因的表达。相关研究主要集中于各种突变体的定位和克隆以及突变体的抗病性和抗病机制。综述了水稻类病变突变基因的性状及抗病性的研究进展,特别是对水稻类病变突变体形成原因、遗传特性、调控途径进行了梳理,并提出对水稻抗病育种的展望,以期为进一步分析类病变突变体的各种机制奠定理论基础,并为水稻育种提供参考。 相似文献
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A spontaneous mutation,tentatively named d63,was derived from the twin-seedling progenies of rice crossed by diploid SARIII and Minghui 63.Compared with wild-type plants,the d63 mutant showed multiple abnormal phenotypes,such as dwarfism,more tillers,smaller flag leaf and reduced seed-setting rate and 1000-grain weight.In this study,two F 2 populations were developed by crossing between d63 and Nipponbare,d63 and 93-11.Genetic analysis indicated that d63 was controlled by a single recessive gene,which was located on the short arm of chromosome 8,within the genetic distance of 0.40 cM from RM22195.Hence,D63 might be a new gene as there are no dwarf genes reported on the short arm of chromosome 8. 相似文献

