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1.
通过本试验观察表明:黄皮[Clausena Lansium (Lour.)Skeels]的开花与温度有密切关系,温度高,开花过程短;温度低,开花过程长。花穗中的花轴增长速度也随温度升高而加快,花轴增长快,则花轴长,花穗大;反之,花轴增长速度慢,花轴短,花穗小。黄皮开花的顺序是从花穗基部第1—4个分枝开始,每个分枝则先从基部1—8个二次分枝首先开放。31℃是黄皮花粉萌发最适宜温度。在培养基中加入15—20%蔗糖或2.4—D,三十烷醇等生长调节物质,明显可提高黄皮花粉的萌发力。本试验对黄皮的物候期及植物学特性同时进行了研究。 相似文献
2.
树木挥发物对植食性昆虫的诱导抗性 总被引:1,自引:0,他引:1
树木挥发物质对植食性昆虫取食,产卵所产生的诱导抗性是树木与昆虫的长期协同进化过程中的必然结果,树木与植食性昆虫之间发展了一套互相调节,自身开拓资源,产生生存对策的复杂相互关系,本文着重阐明了树木与植食性昆虫的互相策略,诱导抗性的生物化学基础以及诱导抗性在调节植食性昆虫种群中的重要性。 相似文献
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本文综述了反刍动物肽的吸收特点及影响因素,肽的吸收代谢机制,肽对瘤胃微生物的调控及对反刍动物生产性能发挥的作用,以及饲料蛋白源活性肽的开发应用。 相似文献
6.
Motoo KOITABASHI Masataka IWANO Seiya TSUSHIMA 《Journal of General Plant Pathology》2002,68(2):183-188
Microorganisms isolated from wheat leaf surfaces were screened for inhibition of wheat powdery mildew. A new screening method,
in which wheat leaves were inoculated with Blumeria graminis f. sp. tritici and incubated with the cultured microorganisms under non-contact conditions, was developed in the present study. Using this
method, 10 phylloplane fungi that inhibited wheat powdery mildew were selected from 408 microorganisms isolated from wheat
leaf surfaces. Among these 10 strains, a fungus designated as Kyu-W63 had an especially strong inhibitory effect. Kyu-W63
produced white colonies without spores when cultivated on PDA. Kyu-W63 had a strong aromatic odor when being cultured. Wheat
powdery mildew was suppressed even though a membrane filter with a pore size of 0.45 μm was placed between the mycelial colony
and wheat leaf segment. However, when activated charcoal was introduced, Kyu-W63 did not inhibit growth of B. graminis. It was presumed that volatile substances were involved in the inhibitory effect of Kyu-W63. GC-MS analysis was used to identify
two substances produced by Kyu-W63 with molecular weights of 164 and 166. Kyu-W63 also inhibited the in vitro growth of four plant pathogenic fungi other than B. graminis.
Received 19 September 2001/ Accepted in revised form 7 February 2002 相似文献
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芽孢杆菌BC98-Ⅰ抗真菌物质的初步分离及特性 总被引:1,自引:0,他引:1
BC98-Ⅰ是一株分离自沤肥浸渍液的蜡状芽孢杆菌,对蔬菜、瓜类、花卉枯萎病具良好的防治效果。它分泌产生的抗真菌物质的粗提物对黄瓜、西瓜、青椒枯萎菌有很强的拮抗作用,当浓度为10mg/mL时,抑菌圈直径分别达到20.33、20.22和22.77mm。该粗提物对高温高压、紫外光和蛋白酶均不敏感。同时,它在中性偏碱(pH8~9)的条件下活性最高;在极性溶剂如水、甲醇、乙醇中溶解度大,抑菌活性高。粗提液经Sephadex G100层析后,得到了两个洗脱峰,活性物质存在于第一峰中。抑菌机制试验表明:它可造成孢子萌发率降低、菌丝生长形态异常、分支加剧并产生大量泡囊。 相似文献
9.
Kyutaro Kishimoto Yoko Nishizawa Yutaka Tabei Masami Nakajima Tadaaki Hibi Katsumi Akutsu 《Journal of General Plant Pathology》2004,70(6):314-320
A class III chitinase gene (CHI2) is induced in cucumber plants (Cucumis sativa L.) in response to infection by pathogenic microorganisms. Infection of Botrytis cinerea, causal agent of gray mold disease on cucumber, also induces CHI2 expression. To investigate whether CHI2 is involved in resistance to gray mold disease, transgenic cucumber plants were produced to overexpress the CHI2 gene. One line was analyzed in detail in terms of disease resistance. The transgenic cucumber plant (CC2) constitutively expressed CHI2 and reduced the symptoms of B. cinerea for 4 days after inoculation compared with nontransgenic plants. However, this inhibitory effect was not absolute, and CC2 eventually developed serious disease symptoms. Chitinase activity of the crude extract from CC2 leaves was higher than that from nontransgenic plants. A high-molecular-weight fraction containing CHI2 from CC2 leaves had fungistatic activity against B. cinerea. Interestingly, the low-molecular-weight fraction from CC2 leaves with CHI2 removed also had fungistatic activity against B. cinerea. Not only the introduced chitinase activity but also the endogenous defense reactions activated by overexpression of CHI2 may be involved in the enhanced gray mold disease resistance in CC2. 相似文献
10.
Biochemical proximates of pumpkin (Cucurbitaeae spp.) and their beneficial effects on the general well‐being of poultry species 下载免费PDF全文
M. C. Achilonu I. C. Nwafor D. O. Umesiobi M. M. Sedibe 《Journal of animal physiology and animal nutrition》2018,102(1):5-16
There is a growing need to increase productivity in poultry. Growth hormones and antibiotics have the ability to improve health, weight gain and feed efficiency in meat‐producing animals. The growth‐promoting antibiotics are administered to poultry to improve the general performance of the chicken. However, the use of the xenobiotic drugs in food‐producing animals has been a concern and a sensitive issue of debate for several decades in the EU and many other regional blocks of the world. Consequently, the use of hormones in animal production has been banned in Italy, Denmark and Germany for over 4–5 decades, while Belgium and Greece had never permitted its use for livestock fattening purposes. Bioactive phytochemicals exhibit antimicrobial, antioxidant, antiparasitic, antiprotozoal, antifungal and anti‐inflammatory properties and consequently have several beneficial effects on appetite, growth and the immune status of the animal. In South Africa, different species of pumpkin are produced for food due to their high nutrient content. The flesh serves as a traditional food, while the seeds and peels are commonly discarded. Pumpkin seed extract is reported to be useful for immunomodulation, reproductive health, therapeutics over a wide range of disease conditions and stimulates metabolism of accumulated fats. Studies have also shown that pumpkin seeds are a valuable source of protein and fat. Their complexity and extent of bioactivity offers sustainable prospects for natural control of pathogenic/parasitic organisms, stimulate nutrition or enhance resistance to disease infections, and reduce abdominal fat and serum levels of harmful lipids, while increasing serum levels of beneficial lipids. 相似文献