U.S. Department of Agriculture, Agricultural Research Service, Beltsville Agricultural Research Center, Beltsville, MD 20705, USA. [corrected]
Mol Plant Microbe Interact. 2011 Mar;24(3):336-51. doi: 10.1094/MPMI-09-10-0221.
Endophytic Trichoderma isolates collected in tropical environments were evaluated for biocontrol activity against Phytophthora capsici in hot pepper (Capsicum annuum). Six isolates were tested for parasitic and antimicrobial activity against P. capsici and for endophytic and induced resistance capabilities in pepper. Isolates DIS 70a, DIS 219b, and DIS 376f were P. capsici parasites, while DIS 70a, DIS 259j, DIS 320c, and DIS 376f metabolites inhibited P. capsici. All six isolates colonized roots but were inefficient stem colonizers. DIS 259j, DIS 320c, and DIS 376f induced defense-related expressed sequence tags (EST) in 32-day-old peppers. DIS 70a, DIS 259j, and DIS 376f delayed disease development. Initial colonization of roots by DIS 259j or DIS 376f induced EST with potential to impact Trichoderma endophytic colonization and disease development, including multiple lipid transferase protein (LTP)-like family members. The timing and intensity of induction varied between isolates. Expression of CaLTP-N, encoding a LTP-like protein in pepper, in N. benthamiana leaves reduced disease development in response to P. nicotianae inoculation, suggesting LTP are functional components of resistance induced by Trichoderma species. Trichoderma isolates were endophytic on pepper roots in which, depending on the isolate, they delayed disease development by P. capsici and induced strong and divergent defense reactions.
从热带环境中采集的内生 Trichoderma 分离物被评估对辣椒(Capsicum annuum)中辣椒疫霉的生物防治活性。对 6 个分离物进行了寄生和抗微生物活性测试,以对抗辣椒疫霉,以及在辣椒中进行内生和诱导抗性能力测试。分离物 DIS 70a、DIS 219b 和 DIS 376f 是辣椒疫霉的寄生虫,而 DIS 70a、DIS 259j、DIS 320c 和 DIS 376f 代谢物抑制了辣椒疫霉。所有 6 个分离物都定殖在根中,但对茎的定殖效率较低。DIS 259j、DIS 320c 和 DIS 376f 诱导了 32 天大的辣椒中的防御相关表达序列标签 (EST)。DIS 70a、DIS 259j 和 DIS 376f 延迟了疾病的发展。DIS 259j 或 DIS 376f 对根的初始定殖诱导了与 Trichoderma 内生定殖和疾病发展有关的 EST,包括多个脂转移蛋白 (LTP)-样家族成员。不同分离物之间的诱导时间和强度不同。辣椒 CaLTP-N 的表达,编码一个 LTP 样蛋白,在 N. benthamiana 叶片中降低了对 P. nicotianae 接种的疾病发展,这表明 LTP 是 Trichoderma 物种诱导的抗性的功能成分。内生 Trichoderma 分离物在辣椒根内定殖,这取决于分离物,它们通过延迟辣椒疫霉引起的疾病发展并诱导强烈和不同的防御反应。